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Titlebook: High Performance Computing in Science and Engineering ‘19; Transactions of the Wolfgang E. Nagel,Dietmar H. Kröner,Michael M. Res Conferen

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Marcel Bornemann,Paul F. Baumeister,Rudolf Zeller,Stefan Blügelchaos synchronization and cryptography) as well as to civil and mechanical engineering, where its use in damage monitoring and control is explored). Featuring contributions from active and leading research groups, this collection is ideal both as a reference and as a ‘recipe book’ full of tried and tested, successful engineering applications.
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D. D. Loureiro,J. Reutzsch,A. Kronenburg,B. Weigand,K. Vogiatzakichaos synchronization and cryptography) as well as to civil and mechanical engineering, where its use in damage monitoring and control is explored). Featuring contributions from active and leading research groups, this collection is ideal both as a reference and as a ‘recipe book’ full of tried and tested, successful engineering applications.
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Long-term Simulations of Magnetized Disks and Jets Around Supermassive Black-hole Binaries in Generand tested our algorithms further with direct benefits for the funded project. Lastly we describe key development milestones that were achieved that will enable such matter simulations around two orbiting black holes within the same efficient computational framework.
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PAMOP2: State-of-the-Art Computations for Atomic, Molecular and Optical Processes facilities, and ion-atom collision experiments, together with plasma, fusion and astrophysical applications. We solve the Schrödinger or Dirac equation using the .-matrix method from first principles. A time-dependent close coupling approach is used to investigate ion-atom excitation and electron-i
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Thermodynamics and Kinetics of the Interactions Between Proteins and Hydrophilic Polymersse and increase circulation life time. The mechanism of action of these coatings is not well understood although it is clear that they unspecifically reduce the amount of proteins adsorbing on the nanoparticle surface coming in contact with biological fluids. Here we have investigated, using state-o
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Crystallization, Fermionization, and Cavity-Induced Phase Transitions of Bose-Einstein Condensatesicles. Here, we study them using the MultiConfigurational Time-Dependent Hartree for Bosons (MCTDHB) method implemented in the MCTDHB and MCTDH-X software packages using the Cray XC40 system Hazel Hen. In this year we investigated the physics of (i) fermionization and crystallization of ultracold st
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